Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

The acetylome of adult mouse sciatic nerve

View through CrossRef
AbstractLysine acetylation is a reversible post‐translational modification (PTM) involved in multiple physiological functions. Recent studies have demonstrated the involvement of protein acetylation in modulating the biology of Schwann cells (SCs) and regeneration of the peripheral nervous system (PNS). However, the mechanisms underlying these processes remain partially understood. Here, we characterized the acetylome of the mouse sciatic nerve (SN) and investigated the cellular distribution of acetylated proteins. We identified 483 acetylated proteins containing 1442 acetylation modification sites in the SN of adult C57BL/6 mice. Bioinformatics suggested that these acetylated SN proteins were mainly located in the myelin sheath, mitochondrial inner membrane, and cytoskeleton, and highlighted the significant differences between the mouse SN and brain acetylome. Manual annotation further indicated that most acetylated proteins (> 45%) were associated with mitochondria, energy metabolism, and cytoskeleton and cell adhesion. We verified three newly discovered acetylation‐modified proteins, including neurofilament light polypeptide (NEFL), neurofilament medium/high polypeptide (NFM/H), and periaxin (PRX). Immunofluorescence illustrated that the acetylated proteins, including acetylated alpha‐tubulin, were mainly co‐localized with S100‐positive SCs. Herein, we provided a comprehensive acetylome for the mouse SN and demonstrated that acetylated proteins in the SN were predominantly located in SCs. These results will extend our understanding and promote further study of the role and mechanism of protein acetylation in SC development and PNS regeneration.image
Title: The acetylome of adult mouse sciatic nerve
Description:
AbstractLysine acetylation is a reversible post‐translational modification (PTM) involved in multiple physiological functions.
Recent studies have demonstrated the involvement of protein acetylation in modulating the biology of Schwann cells (SCs) and regeneration of the peripheral nervous system (PNS).
However, the mechanisms underlying these processes remain partially understood.
Here, we characterized the acetylome of the mouse sciatic nerve (SN) and investigated the cellular distribution of acetylated proteins.
We identified 483 acetylated proteins containing 1442 acetylation modification sites in the SN of adult C57BL/6 mice.
Bioinformatics suggested that these acetylated SN proteins were mainly located in the myelin sheath, mitochondrial inner membrane, and cytoskeleton, and highlighted the significant differences between the mouse SN and brain acetylome.
Manual annotation further indicated that most acetylated proteins (> 45%) were associated with mitochondria, energy metabolism, and cytoskeleton and cell adhesion.
We verified three newly discovered acetylation‐modified proteins, including neurofilament light polypeptide (NEFL), neurofilament medium/high polypeptide (NFM/H), and periaxin (PRX).
Immunofluorescence illustrated that the acetylated proteins, including acetylated alpha‐tubulin, were mainly co‐localized with S100‐positive SCs.
Herein, we provided a comprehensive acetylome for the mouse SN and demonstrated that acetylated proteins in the SN were predominantly located in SCs.
These results will extend our understanding and promote further study of the role and mechanism of protein acetylation in SC development and PNS regeneration.
image.

Related Results

Differential Diagnosis of Neurogenic Thoracic Outlet Syndrome: A Review
Differential Diagnosis of Neurogenic Thoracic Outlet Syndrome: A Review
Abstract Thoracic outlet syndrome (TOS) is a complex and often overlooked condition caused by the compression of neurovascular structures as they pass through the thoracic outlet. ...
Modified method of producing sciatic nerve crush injury model in Wistar rats: A pilot study
Modified method of producing sciatic nerve crush injury model in Wistar rats: A pilot study
The production of a standard and reproducible experimental mode of peripheral nerve injury, has been a long-time quest in nerve regeneration research. The aim of this pilot study w...
Phrenic Nerve Block for Management of Post-Thoracic Outlet Decompression Cough: A Case Report and Literature Review
Phrenic Nerve Block for Management of Post-Thoracic Outlet Decompression Cough: A Case Report and Literature Review
Abstract Introduction Thoracic outlet syndrome is a group of disorders arising from compressive forces on the neurovascular bundle in that region due to different etiologies. This...
The Effect of Electrical Stimulation of the Pudendal Nerve on Sciatic Nerve Blood Flow in Animals
The Effect of Electrical Stimulation of the Pudendal Nerve on Sciatic Nerve Blood Flow in Animals
Objective To investigate the mechanism of the clinical effect of electroacupuncture of the pudendal nerve on the lumbar and lower limb symptoms caused by lumbar...
Reviving Matrix for Nerve Reconstruction in Rabbit Model of Chronic Peripheral Nerve Injury With Massive Loss Defect
Reviving Matrix for Nerve Reconstruction in Rabbit Model of Chronic Peripheral Nerve Injury With Massive Loss Defect
Background and Aims:The aim of this study was to investigate the innovative guiding regenerative gel (GRG) and antigliotic GRG (AGRG) fillings for nerve conduits, prepared with Foo...
Effect Of D-Ribose-L-cysteine on associated complications in sciatic nerve crush injury model
Effect Of D-Ribose-L-cysteine on associated complications in sciatic nerve crush injury model
Background: oxidative stress has been established as a significant factor in the pathogenesis of peripheral nerve injury. D-ribose-L-cysteine (DRLC) is an antioxidant agent with ce...
Construction and effect evaluation of different sciatic nerve injury models in rats
Construction and effect evaluation of different sciatic nerve injury models in rats
Abstract Background The most commonly used experimental model for preclinical studies on peripheral nerve regeneration is the sc...

Back to Top